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Radmehr, Farzad; Drake, Michael – Teaching Mathematics and Its Applications, 2019
Previous studies have explored students' understanding of the relationship between definite integrals and areas under curves, but not their metacognitive experiences and skills while solving such problems. This paper explores students' mathematical performance, metacognitive experiences and metacognitive skills when solving integral-area tasks by…
Descriptors: Metacognition, Mathematical Concepts, Problem Solving, Student Experience
Adu-Gyamfi, Kwaku; Bossé, Michael J.; Lynch-Davis, Kathleen – School Science and Mathematics, 2019
Previous research has investigated the representational translation practices of high school students, high school teachers, and college preservice teachers in various mathematical contexts including linear functions. Findings from qualitative research has frequently led to new notions about participant work and understanding. Many quantitative…
Descriptors: Comparative Analysis, High School Students, High School Teachers, Preservice Teachers
Ada, Tuba; Kurtulus, Aytaç – Acta Didactica Napocensia, 2019
Circle, ellipse, parabola, hyperbolic curves are defined as conic sections from the intersection of a coni with a plane at different angles. These curves can be found in different positions depending on the different angles. In this case, rotation transformation can be applied to the curves so that their major axes are brought to the horizontal…
Descriptors: Problem Solving, Preservice Teachers, Mathematics Instruction, Geometric Concepts
Riehl, Suzanne M.; Steinthorsdottir, Olof B. – Investigations in Mathematics Learning, 2019
This study explores the effects of number structure characteristics on student thinking in solving missing-value proportion problems. Prior research has documented that the presence of an integer ratio is beneficial, particularly if the integer relationship is within the same measure space. Less information on student performance is available,…
Descriptors: Problem Solving, Mathematical Concepts, Numbers, Mathematics Instruction
O'Connell, John P. – Chemical Engineering Education, 2019
Thermodynamics challenges teachers and learners. Its pervasiveness about nature, mathematical abstractness, nonnumerical relations, and complexity in applications can inhibit understanding and usage, especially by undergraduates. Perspectives are given about these obstacles, and some suggestions are made to enhance comprehension of the discipline.
Descriptors: Thermodynamics, Science Instruction, Teaching Methods, Barriers
Fonger, Nicole L.; Altindis, Nigar – North American Chapter of the International Group for the Psychology of Mathematics Education, 2019
This paper articulates a stance on the study of students' meaningful mathematics understanding with multiple representations. We integrate Thompson's theory of quantitative reasoning and Dreyfus' theory of multiple representations in our approach to frame and conduct empirical investigations of the study of meaningful understanding of function. We…
Descriptors: Mathematics Instruction, Mathematical Concepts, Concept Formation, Mathematical Logic
Kshetree, Mukunda Prakash; Acharya, Bed Raj; Khanal, Bishnu; Panthi, Ram Krishna; Belbase, Shashidhar – European Journal of Educational Research, 2021
This paper explores misconceptions and errors (M/Es) of eighth-grade students in Nepal with a quasi-experimental design with nonequivalent control and experimental groups. The treatment was implemented with teaching episodes based on different remedial strategies of addressing students' M/Es. Students of control groups were taught under…
Descriptors: Grade 8, Secondary School Students, Mathematical Concepts, Misconceptions
Zhang, Jingjing; Gao, Ming; Holmes, Wayne; Mavrikis, Manolis; Ma, Ning – Interactive Learning Environments, 2021
Feedback in exploratory learning systems has been depicted as an important contributor to encourage exploration. However, few studies have explored learners' interaction patterns associated with feedback and the use of external representations in exploratory learning environments. This study used Fractions Lab, an exploratory learning environment…
Descriptors: Interaction, Behavior Patterns, Discovery Learning, Fractions
Rodley, Hilary; Bailey, Judy – set: Research Information for Teachers, 2021
Problem solving is at the heart of mathematics, and is known to support learning for a diverse range of children. However, challenges can be encountered when teaching mathematics through problem solving. This article provides insights from research literature into: (1) the nature of the challenges; and (2) some ways that problem solving can be…
Descriptors: Mathematics Instruction, Teaching Methods, Problem Solving, Barriers
Makowski, Martha B. – Research in Mathematics Education, 2021
Teaching meaningful and productive mathematical argument in school requires teachers who are comfortable with diverse forms of mathematical justification. This study examines the written and oral justifications of pre-service middle school teachers (PSTs) in a single classroom, focusing on the types of justifications they use during the patterns…
Descriptors: Mathematics Instruction, Teaching Methods, Preservice Teachers, Middle School Teachers
White Brahmia, Suzanne; Olsho, Alexis; Smith, Trevor I.; Boudreaux, Andrew; Eaton, Philip; Zimmerman, Charlotte – Physical Review Physics Education Research, 2021
One desired outcome of introductory physics instruction is that students will develop facility with reasoning quantitatively about physical phenomena. Little research has been done regarding how students develop the algebraic concepts and skills involved in reasoning productively about physics quantities, which is different from either…
Descriptors: Mathematics Skills, Thinking Skills, Physics, Science Instruction
Wares, Arsalan – Australian Mathematics Education Journal, 2021
The purpose of this article is to describe a couple of challenging mathematical problems that involve paper folding. These problem solving tasks can be used to foster geometric and algebraic thinking among students. The context of paper folding makes some of the abstract mathematical ideas involved relatively concrete. When implemented…
Descriptors: Mathematics Instruction, Teaching Methods, Problem Solving, Manipulative Materials
What Works Clearinghouse, 2021
In this set of tips, parents and caregivers will learn how to: (1) support children's understanding of fractions at home with activities on dividing objects (recommended for grades K-5); (2) support children's understanding of fractions at home with measurement activities (recommended for grades K-4); (3) support children's understanding of…
Descriptors: Mathematics Instruction, Fractions, Mathematical Concepts, Concept Formation
Julian Drake Gifford – ProQuest LLC, 2021
The use and understanding of mathematics is a crucial component of the physical sciences. Much work has been done in physics education research and science education more broadly to determine persistent difficulties with mathematics. This work has led to the development of numerous problem solving strategies aimed at helping learners approach…
Descriptors: Physics, Science Instruction, Mathematics Skills, Mathematics Achievement
Lawson, Alyssa P.; Mirinjian, Arineh; Son, Ji Y. – Journal of Cognitive Education and Psychology, 2018
Understanding how struggling students approach math is vital to designing effective math lessons. Many low achieving students rely on a weak knowledge of procedures and attempt calculations without adequate consideration of the problem. We investigated how enabling or preventing premature calculations affected learning math. Students were…
Descriptors: Computation, Mathematics Instruction, Mathematical Concepts, Teaching Methods

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